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The Fiat-Shamir Transformation in a Quantum World

机译:量子世界中的菲亚特-沙米尔变换

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The Fiat-Shamir transformation is a famous technique to turn identification schemes into signature schemes. The derived scheme is provably secure in the random-oracle model against classical adversaries. Still, the technique has also been suggested to be used in connection with quantum-immune identification schemes, in order to get quantum-immune signature schemes. However, a recent paper by Boneh et al. (Asiacrypt 2011) has raised the issue that results in the random-oracle model may not be immediately applicable to quantum adversaries, because such adversaries should be allowed to query the random oracle in superposition. It has been unclear if the Fiat-Shamir technique is still secure in this quantum oracle model (QROM). Here, we discuss that giving proofs for the Fiat-Shamir transformation in the QROM is presumably hard. We show that there cannot be black-box extractors, as long as the underlying quantum-immune identification scheme is secure against active adversaries and the first message of the prover is independent of its witness. Most schemes are of this type. We then discuss that for some schemes one may be able to resurrect the Fiat-Shamir result in the QROM by modifying the underlying protocol first. We discuss in particular a version of the Lyubashevsky scheme which is provably secure in the QROM.
机译:菲亚特-沙米尔(Fiat-Shamir)变换是一种将识别方案转换为签名方案的著名技术。在随机预言模型中,针对经典对手,推导的方案证明是安全的。仍然,该技术也已经被建议与量子免疫识别方案结合使用,以便获得量子免疫签名方案。但是,Boneh等人的最新论文。 (Asiacrypt 2011)提出了一个问题,即随机预言模型无法立即适用于量子对手,因为应该允许此类对手以重叠的方式查询随机预言。尚不清楚在该量子预言模型(QROM)中Fiat-Shamir技术是否仍然安全。在这里,我们讨论为QROM中的Fiat-Shamir变换提供证据可能很难。我们证明,只要基本的量子免疫识别方案能够有效防御主动对手并且证明者的第一条信息独立于其证人,就不可能有黑匣子提取器。大多数方案都是这种类型的。然后,我们讨论对于某些方案,可以通过首先修改基础协议在QROM中恢复Fiat-Shamir结果。我们特别讨论了Lyubashevsky方案的一个版本,该版本在QROM中被证明是安全的。

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